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第969回分子研コロキウム

演 題 Buidling quantum processors and quantum networks atom-by-atom
日 時 2023年07月14日(金) 16:00 より 17:30 まで
講演者 Hannes Bernien (University of Chicago)
場 所

 ハイブリッド開催(分子科学研究所 研究棟201およびZoom)
*Zoom参加登録サイト

https://registration.ims.ac.jp/IMS_colloquium
(所内の方はできるだけ対面でご参加ください。)

概 要

Reconfigurable arrays of neutral atoms are an exciting new platform to study quantum many-body phenomena and quantum information protocols. Their excellent coherence combined with programmable Rydberg interactions have led to intriguing observations such as quantum phase transitions, the discovery of quantum many-body scars, and novel quantum computing architectures.
Here, I will introduce new methods for controlling and measuring atom arrays that open up new directions in quantum state control, quantum feedback and many-body physics. First, I will introduce a dual species atomic array in which the second atomic species can be used to measure and control the primary species. We use an array of cesium qubits to correct correlated phase errors on an array of rubidium data qubits [1]. Crucially, by combining in-sequence readouts, data processing, and feed-forward operations, these correlated errors are suppressed within the execution of the quantum circuit.

An alternative, hybrid approach for engineering interactions and scaling these quantum systems is the coupling of atoms to nanophotonic structures in which photons mediate interactions between atoms. Such a system can function as the building block of a large-scale quantum network. In this context, I will present quantum network node architectures that are capable of long-distance entanglement distribution at telecom wavelengths [2].


[1] Singh, Bradley, Anand, Ramesh, White, Bernien, Science, 10.1126/science.ade5337 (2023)
[2] Menon, Singh, Borregaard, Bernien NJP 22, 073033 (2020)

お問合せ先

大森賢治(光分子科学研究領域)
倉持 光、瀬川泰知(2023年度コロキウム委員)